首页> 外文期刊>Journal of Experimental Botany >Cotton KNL1, encoding a class II KNOX transcription factor, is involved in regulation of fibre development
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Cotton KNL1, encoding a class II KNOX transcription factor, is involved in regulation of fibre development

机译:棉花KNL1,编码II类KNOX转录因子,参与纤维发育的调控

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摘要

In this study, the GhKNL1 (KNOTTED1-LIKE) gene, encoding a classical class II KNOX protein was identified in cotton (Gossypium hirsutum). GhKNL1 was preferentially expressed in developing fibres at the stage of secondary cell wall (SCW) biosynthesis. GhKNL1 was localized in the cell nucleus, and could interact with GhOFP4, as well as AtOFP1, AtOFP4, and AtMYB75. However, GhKNL1 lacked transcriptional activation activity. Dominant repression of GhKNL1 affected fibre development of cotton. The expression levels of genes related to fibre elongation and SCW biosynthesis were altered in transgenic fibres of cotton. As a result, transgenic cotton plants produced aberrant, shrunken, and collapsed fibre cells. Length and cell-wall thickness of fibres of transgenic cotton plants were significantly reduced compared with the wild type. Furthermore, overexpression and dominant repression of GhKNL1 in Arabidopsis resulted in a reduction in interfascicular fibre cell-wall thickening of basal stems of transgenic plants. Complementation revealed that GhKNL1 rescued the defective phenotype of Arabidopsis knat7 mutant in some extent. These data suggest that GhKNL1, as a transcription factor, participates in regulating fibre development of cotton.
机译:在这项研究中,在棉花(陆地棉)中鉴定了编码经典的II类KNOX蛋白的GhKNL1(KNOTTED1-LIKE)基因。 GhKNL1在次级细胞壁(SCW)生物合成阶段优先在发育中的纤维中表达。 GhKNL1位于细胞核中,并且可以与GhOFP4以及AtOFP1,AtOFP4和AtMYB75相互作用。但是,GhKNL1缺乏转录激活活性。 GhKNL1的主要抑制作用影响棉花的纤维发育。转基因棉花中与纤维伸长和SCW生物合成相关的基因的表达水平发生了改变。结果,转基因棉花植物产生异常,收缩和塌陷的纤维细胞。与野生型相比,转基因棉花植物的纤维长度和细胞壁厚度显着减少。此外,GhKNL1在拟南芥中的过表达和显性抑制导致转基因植物基茎的束间纤维细胞壁增厚减少。互补显示GhKNL1在一定程度上挽救了拟南芥knat7突变体的缺陷表型。这些数据表明,GhKNL1作为转录因子参与调节棉花的纤维发育。

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